论文标题
有机绝缘子beta'-etme3SB [PD(DMIT)2] 2的电阻率和导热率
Resistivity and Thermal Conductivity of an Organic Insulator beta'-EtMe3Sb[Pd(dmit)2]2
论文作者
论文摘要
在绝缘磁体中,在零温度下的热导率中的有限残留线性项表明存在巡回准颗粒的无间隙激发,在某些量子旋转液体(QSL)的候选材料中已经观察到了这一点。在有机三角绝缘子beta'-etme3sb [pd(dmit)2] 2中,QSL候选材料,低温导热率取决于冷却过程,并且仅在具有较大导热率的样品中观察到有限的残留项。此外,冷却速率依赖性在很大程度上取决于样本。在这里,我们发现,虽然低温热导率显着取决于冷却速率,但高温电阻率几乎完全独立于冷却速率。这些结果表明,在具有有限残留项的样品中,在低温下携带热量的准颗粒的平均自由路径受疾病的控制,其分布的特征长度比确定高温电阻率的电子平均自由路径更长。这就解释了为什么最近的X射线衍射和核磁共振测量结果没有冷却速率依赖性。自然,这些测量值不适合检测与导热性相关的长度尺度的疾病,就像它们无法确定金属的残余电阻率一样。目前的结果表明,在讨论beta'-etme3sb [pd(dmit)2] 2中的巡回旋转激发时,需要非常仔细的实验。
A finite residual linear term in the thermal conductivity at zero temperature in insulating magnets indicates the presence of gapless excitations of itinerant quasiparticles, which has been observed in some candidate materials of quantum spin liquids (QSLs). In the organic triangular insulator beta'-EtMe3Sb[Pd(dmit)2]2, a QSL candidate material, the low-temperature thermal conductivity depends on the cooling process and the finite residual term is observed only in samples with large thermal conductivity. Moreover, the cooling rate dependence is largely sample dependent. Here we find that, while the low-temperature thermal conductivity significantly depends on the cooling rate, the high-temperature resistivity is almost perfectly independent of the cooling rate. These results indicate that in the samples with the finite residual term, the mean free path of the quasiparticles that carry the heat at low temperatures is governed by disorders, whose characteristic length scale of the distribution is much longer than the electron mean free path that determines the high-temperature resistivity. This explains why recent X-ray diffraction and nuclear magnetic resonance measurements show no cooling rate dependence. Naturally, these measurements are unsuitable for detecting disorders of the length scale relevant for the thermal conductivity, just as they cannot determine the residual resistivity of metals. Present results indicate that very careful experiments are needed when discussing itinerant spin excitations in beta'-EtMe3Sb[Pd(dmit)2]2.